A new "self-driving" microscope developed by UT Southwestern Medical Center researchers solves two fundamental challenges ...
Most cells in the body send out little messengers called extracellular vesicles that carry proteins, lipids, and other ...
Here, the authors present Cecelia, an image analysis toolbox based on R and Python, which enables researchers to quantify large scale tissue sections as well as live cell imaging data. Its modular ...
3 天
AZoOptics on MSN3D-MP-SIM: Advancing Live-Cell Fluorescence MicroscopyD-MP-SIM revolutionizes live-cell fluorescence microscopy, enabling high-speed, high-resolution imaging with reduced motion artifacts for dynamic biological research ...
1 天
AZoLifeSciences on MSNSpotiphy Revolutionizes Spatial Transcriptomics with AI for Single-Cell ResolutionSpatial transcriptomics is a cutting-edge technique that characterizes gene expression within sections of tissue, such as ...
3 天on MSN
A research team led by Prof. Sun Cheng from the University of Science and Technology of China (USTC), in collaboration with ...
Spatial transcriptomics is a cutting-edge technique that characterizes gene expression within sections of tissue, such as heart, skin or liver tissue ...
Researchers use high-resolution imaging to reveal the dynamic structure of biomolecular condensates, shedding light on their ...
3 天
AZoOptics on MSNNew Microscope Reveals Biological Dynamics from Organism to CellUT Southwestern's innovative microscope integrates high and low-resolution imaging, facilitating advanced studies of cellular dynamics and disease processes.
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